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Titlebook: Light-Matter Interactions Towards the Nanoscale; Maura Cesaria,Antonio Calà Lesina,John Collins Conference proceedings 2022 Springer Natur

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Nanophotonic Circuits forUnconventional Computing Applicationsherein electrical connections are replaced with photonic waveguides which guide light to desired locations on chip. Through near-field coupling, such waveguides enable interactions with functional materials placed very close to the waveguide surface. This way, photonic circuits which are normally pa
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Terahertz Light-Matter Interactions at the Nanoscalerelatively long wavelengths of terahertz radiation, which lie in the millimetre to sub-millimetre wavelength regime, recent developments have made it possible to use terahertz radiation to image, probe and manipulate matter at unprecedented sub-wavelength scales, with nanometre or even sub-nanometre
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Absorption, Emission, and Vacuum Fluctuationsespect to an existing (triggering) electromagnetic field. One of these approaches proposes that stimulated emission and absorption occur in phase and out of phase with their driving field, respectively, whereas spontaneous emission occurs under an arbitrary phase difference with respect to an existi
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Nd3+ Ion as a Structural Probe in Studies of Selected Oxide Host Lattices: Coupling the Low-Temperatttices with particular highlighting its role as a structural probe. The main goal is to get precious information about the symmetry and activator’s environment in the following different oxide host lattices like cubic Lu.O. sesquioxide and molybdate compounds of tetragonal scheelite-type CdMoO., mon
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Research of Efficient and Fast Scintillator Garnet Crystals: The Role of Ce4+ in Ce3+, Mg2+-Co-Dopedand, secondly, the illustration of the dynamics of this field by giving spectroscopic and scintillation properties of the most advanced oxide scintillator Ce., Mg.-co-doped Gd.Al.Ga.O. (GAGG) garnet host, grown by using both the micro-pulling-down (.-PD) and the Czochralski methods at the Tohoku Uni
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Refractive Index Sensing by Phase Shift Cavity Ringdown Spectroscopy these factors put a limitation on its performance for sensing applications. In this study cost effective and easy to use phase shift cavity ring down spectroscopy (PS-CRDS) technique, has been demonstrated for refractive index sensing. A refractive index sensor consisting of a tapered single mode o
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Hyperpolarizability of Plasmonic Nanostructures: A Method to Quantify the SHG Emission from a Metasuof the nanostructure by considering the electron dynamics through the hydrodynamic model. We then use the hyperpolarizability to drive the emission from a distribution of independent dipoles. And finally, we sum these contributions in the far-field to obtain the SHG emission from the metasurface.
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